Literature DB >> 32170592

Lysine acetylation as drug target in fungi: an underexplored potential in Aspergillus spp.

Natália Sayuri Wassano1, Ariely Barbosa Leite2, Franqueline Reichert-Lima3, Angelica Zaninelli Schreiber3, Nilmar S Moretti4, André Damasio5,6.   

Abstract

In recent years, the intensification of the use of immunosuppressive therapies has increased the incidence of invasive infections caused by opportunistic fungi. Considering that, the spread of azole resistance and amphotericin B (AmB) inefficiency against some clinical and environmental isolates has been described. Thus, to avoid a global problem when controlling fungal infections and critical failures in medicine, and food security, new approaches for drug target identification and for the development of new treatments that are more effective against pathogenic fungi are desired. Recent studies indicate that protein acetylation is present in hundreds of proteins of different cellular compartments and is involved in several biological processes, i.e., metabolism, translation, gene expression regulation, and oxidative stress response, from prokaryotes and eukaryotes, including fungi, demonstrating that lysine acetylation plays an important role in essential mechanisms. Lysine acetyltransferases (KATs) and lysine deacetylases (KDACs), the two enzyme families responsible for regulating protein acetylation levels, have been explored as drug targets for the treatment of several human diseases and infections. Aspergilli have on average 8 KAT genes and 11 KDAC genes in their genomes. This review aims to summarize the available knowledge about Aspergillus spp. azole resistance mechanisms and the role of lysine acetylation in the control of biological processes in fungi. We also want to discuss the lysine acetylation as a potential target for fungal infection treatment and drug target discovery.

Entities:  

Keywords:  Aspergillus spp.; Drug resistance; KATs; KDACs; Lysine acetylation

Year:  2020        PMID: 32170592      PMCID: PMC7203240          DOI: 10.1007/s42770-020-00253-w

Source DB:  PubMed          Journal:  Braz J Microbiol        ISSN: 1517-8382            Impact factor:   2.476


  136 in total

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8.  Sensitisation of an Azole-Resistant Aspergillus fumigatus Strain containing the Cyp51A-Related Mutation by Deleting the SrbA Gene.

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Journal:  Pathog Immun       Date:  2018-09-25

10.  A sterol-regulatory element binding protein is required for cell polarity, hypoxia adaptation, azole drug resistance, and virulence in Aspergillus fumigatus.

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Journal:  PLoS Pathog       Date:  2008-11-07       Impact factor: 6.823

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